Does cysteine rule (Cysr) complete the cendr principle? increase in affinity of peptide ligands for NRP-1 through the presence of N-terminal cysteine

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Abstract

The structure-activity relationship of branched H-Lys(hArg)-Dab-Dhp-Arg-OH sequence analogues, modified with Cys-Asp or Cys at N-terminal amino acids (Lys, hArg), in VEGF-A165/Neuropilin-1 complex inhibition is presented. The addition of Cys residue led to a 100-fold decrease in the IC50 value, compared to the parent peptide. The change occurred regardless of coupling Cys to the free N-terminal amino group present in the main or the side chain. A few analogues extended by the attachment of Cys at the N-terminus of several potent NRP-1 peptide ligands documented in the literature are also presented. In all studied cases, the enhancement of inhibitory properties after the addition of Cys at the N-terminus is observed. It is particularly evident for the tetrapeptide derived from the C-terminus of VEGF-A165 (KPRR), suggesting that extending the K/RXXK/R motif (CendR) with the Cys moiety can significantly improve affinity to NRP-1 of CendR peptides.

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Puszko, A. K., Sosnowski, P., Raynaud, F., Hermine, O., Hopfgartner, G., Lepelletier, Y., & Misicka, A. (2020). Does cysteine rule (Cysr) complete the cendr principle? increase in affinity of peptide ligands for NRP-1 through the presence of N-terminal cysteine. Biomolecules, 10(3). https://doi.org/10.3390/biom10030448

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